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首页> 外文期刊>Scientific reports. >Differential protein expression in diverse brain areas of Parkinson’s and Alzheimer’s disease patients
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Differential protein expression in diverse brain areas of Parkinson’s and Alzheimer’s disease patients

机译:帕金森和阿尔茨海默病患者不同脑区的差异蛋白表达

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Many hypotheses have been postulated to define the etiology of sporadic Parkinson’s and Alzheimer’s disorders (PD and AD) but there is no consensus on what causes these devastating age-related diseases. Braak staging of both pathologies helped researchers to better understand the progression and to identify their prodromal and symptomatic phases. Indeed, it is well accepted that Lewy body pathology and neurofibrillary tangles appearance correlates with disease progression and severity of symptoms in PD and AD, respectively. Additionally, several studies in PD and AD models try to disclose which cellular mechanisms are defaulted and trigger the neurodegenerative process that culminates with neuronal death causing PD and AD classical symptomatology. Herein, we determined expression levels of proteins involved in microtubule assembly, autophagic-lysosomal pathway and unfolded protein response in the cortex, hippocampus and SNpc of PD and AD patients, vascular dementia patients and aged-match controls. The differential expression allowed us to determine which pathways are determinant to synaptic dysfunction and to establish a time line for disease progression. Our results allow us to challenge the hypothesis that both PD and AD pathologies are caused by α-synuclein or Aβ pathology propagation throughout the brain in a prion-like manner.
机译:许多假设已被假设以定义零星帕金森和阿尔茨海默氏症的病因(PD和AD),但对导致这些毁灭性的年龄有关的疾病没有共识。 BRAAK两种病理学的分期帮助研究人员更好地了解进展并鉴定其前驱和症状阶段。实际上,公开的身体病理和神经纤维纤维缠结的外观分别与Pd和广告中的疾病进展和症状严重程度相关。此外,PD和AD模型的几项研究试图公开默认的细胞机制,并引发神经变性过程,使神经病毒性死亡引起PD和广告古典症状。在此,我们确定了PD和AD患者的皮质,海马和SNPC中的微管组件,自噬溶酶体途径和展开蛋白质反应中所涉及的蛋白质的表达水平,血管痴呆患者和年龄匹配对照。差异表达允许我们确定哪些途径是突触功能障碍的决定因子,并建立疾病进展的时间线。我们的结果允许我们挑战PD和AD病理的假设是由诸如朊病毒方式在整个大脑中引起的α-突触核蛋白或Aβ病理学繁殖。

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